Budiyanto, Eko; Zerebecki, Swen; Weidenthaler, Claudia; Kox, Tim; Kenmoe, Stephane; Spohr, Eckhard; Debeer, Serena; Rüdiger, Olaf; Reichenberger, Sven; Barcikowski, Stephan; Tüysüz, Harun:
Impact of single-pulse, low-intensity laser post-processing on structure and activity of mesostructured cobalt oxide for the oxygen evolution reaction
In: ACS Applied Materials & Interfaces, Vol. 13 (2021), No. 44, pp. 51962 - 51973
2021article/chapter in journalOA Hybrid
ChemistryFaculty of Chemistry » Technische ChemieFaculty of Chemistry » Theoretische ChemieScientific institutes » Center for Nanointegration Duisburg-Essen (CENIDE)Scientific institutes » Center of Medical Biotechnology (ZMB)
Related: 1 publication(s)
Title in English:
Impact of single-pulse, low-intensity laser post-processing on structure and activity of mesostructured cobalt oxide for the oxygen evolution reaction
Author:
Budiyanto, Eko
;
Zerebecki, Swen
;
Weidenthaler, ClaudiaUDE
LSF ID
58104
ORCID
0000-0003-3006-1333ORCID iD
Other
connected with university
;
Kox, Tim
;
Kenmoe, StephaneUDE
GND
1121141544
LSF ID
55953
ORCID
0000-0003-3622-2716ORCID iD
Other
connected with university
;
Spohr, EckhardUDE
GND
143257005
LSF ID
49123
ORCID
0000-0001-8148-7575ORCID iD
Other
connected with university
;
Debeer, Serena
;
Rüdiger, Olaf
;
Reichenberger, SvenUDE
GND
1137216204
LSF ID
58243
ORCID
0000-0002-7166-9428ORCID iD
Other
connected with university
;
Barcikowski, StephanUDE
GND
129006084
LSF ID
52773
ORCID
0000-0002-9739-7272ORCID iD
Other
connected with university
;
Tüysüz, Harun
Year of publication:
2021
Open Access?:
OA Hybrid
Web of Science ID
PubMed ID
Scopus ID
Language of text:
English
Keyword, Topic:
Cobalt oxide ; Defect engineering ; Electrocatalyst ; Oxygen evolution reaction ; Reactive laser processing ; X-ray spectroscopy

Abstract in English:

Herein, we report nanosecond, single-pulse laser post-processing (PLPP) in a liquid flat jet with precise control of the applied laser intensity to tune structure, defect sites, and the oxygen evolution reaction (OER) activity of mesostructured Co3O4. High-resolution X-ray diffraction (XRD), Raman, and X-ray photoelectron spectroscopy (XPS) are consistent with the formation of cobalt vacancies at tetrahedral sites and an increase in the lattice parameter of Co3O4 after the laser treatment. X-ray absorption spectroscopy (XAS) and X-ray emission spectroscopy (XES) further reveal increased disorder in the structure and a slight decrease in the average oxidation state of the cobalt oxide. Molecular dynamics simulation confirms the surface restructuring upon laser post-treatment on Co3O4. Importantly, the defect-induced PLPP was shown to lower the charge transfer resistance and boost the oxygen evolution activity of Co3O4. For the optimized sample, a 2-fold increment of current density at 1.7 V vs RHE is obtained and the overpotential at 10 mA/cm2 decreases remarkably from 405 to 357 mV compared to pristine Co3O4. Post-mortem characterization reveals that the material retains its activity, morphology, and phase structure after a prolonged stability test.